DocumentCode :
653631
Title :
Modeling single-stage high-power-factor AC-DC converters for LED driving applications
Author :
Alonso, J. Marcos ; Gacio, David ; Sichirollo, Francesco ; Seidel, A.R. ; Dalla Costa, Marco A.
Author_Institution :
Electr. Eng. Dept., Univ. de Oviedo, Gijon, Spain
fYear :
2013
fDate :
6-11 Oct. 2013
Firstpage :
1
Lastpage :
8
Abstract :
In this paper a methodology to modeling high-power-factor (HPF) ac-dc converters in LED driving applications is presented. The proposed methodology is based on the averaging methodology applied to the converter under modeling. An averaged large-signal equivalent circuit is generated in this manner, which will be useful to perform extremely fast computer simulations. From the large-signal model both steady-state and small-signal analysis can be carried out to completely modeling the converter, achieving any desired steady-state characteristic and small-signal transfer functions. The proposed methodology is very intuitive and allows designers to achieve a natural understanding of the LED driver performance. The modeling procedure is illustrated with a HPF buck-boost converter operating in discontinuous conduction mode (DCM) designed to supply a 70W LED lamp. Simulation and experimental results demonstrate the validity of the proposed methodology.
Keywords :
AC-DC power convertors; LED lamps; equivalent circuits; power factor; transfer functions; DCM; HPF ac-dc converters; HPF buck-boost converter operating; LED driving applications; LED lamp; averaged large-signal equivalent circuit; discontinuous conduction mode; high-power-factor ac-dc converters; power 70 W; small-signal analysis; small-signal transfer functions; steady-state characteristic; AC-DC power converters; Computational modeling; Integrated circuit modeling; Light emitting diodes; Reactive power; Steady-state;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Industry Applications Society Annual Meeting, 2013 IEEE
Conference_Location :
Lake Buena Vista, FL
ISSN :
0197-2618
Type :
conf
DOI :
10.1109/IAS.2013.6682540
Filename :
6682540
Link To Document :
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